Method and smart air conditioning system
Abstract
A method and system for providing a specific temperature to a specific bed in a common room having a plurality of beds is disclosed that include: an air filtering module for cleaning the air in the common room, a primary air conditioning module for setting a common temperature, a plurality of secondary air conditioning modules for setting a specific temperature at each bed, a plurality of air circulating modules for creating a convection current of the specific temperature from underneath each bed, and a central processing unit (CPU) for setting specific temperatures of each bed in accordance with a mode selected from an auto mode, a manual mode, and a timing control mode.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. A smart air conditioning system for providing a specific temperature to a specific bed in a common room having a plurality of beds, comprising:
an air filtering module, placed underground and outside at a first predetermined distance from said common room, operable to provide a clean air to said common room, wherein said air filtering module further comprises:
a water container,
a silver metal screen covering the entire surface of the water,
a layer of activated carbon deposited upon the entire top surface area of said silver metal screen,
a plurality of input air ducts, each having a first end placed inside of said common room and a second end bent at 90° from said first end and extends below the surface of the water of said water container, and
a plurality of suction fans, each is placed on the other side of said water container opposite to said plurality of input air ducts and above the surface of said layer of activated carbon;
a primary air conditioning module, placed underground and outside at a second predetermined distance from said common room, operable to receive said clean air from said air filtering module and to provide a common temperature to the entirety of said common room;
a plurality of secondary air conditioning modules, each placed underneath each of said plurality of beds, operable to provide said specific temperature according to the preference of each user of each bed;
a plurality of air circulating modules, each placed underneath each bed and directly above said secondary air conditioning module, operable to create an updraft of said clean air and said specific temperature from underneath each bed toward the ceiling of said common room; and
a central processing unit (CPU), electrically coupled to said plurality of secondary air conditioning modules, operable to automatically set said specific temperatures of each bed in accordance with a mode selected from an auto mode, a manual mode, and a timing control mode.
2. The smart air conditioning system of claim 1 further comprises a temperature controller, electrically coupled to said CPU and said plurality of secondary air conditioning modules, operable to adjust each of said specific temperature by either said manual mode, said preset mode, or said auto mode.
3. The smart air conditioning system of claim 1 further comprises a fan module controller electrically coupled to said air circulating module, operable to adjust at least five different air circulating speeds.
4. The smart air conditioning system of claim 1 wherein said primary air conditioning module further senses said specific temperatures set by said plurality of beds and selects the lowest temperature as said common temperature.
5. The smart air conditioning system of claim 4 wherein said primary air conditioning module has a cubic shape and is made of porcelain or plastic covered by a Styrofoam material.
6. The smart air conditioning system of claim 5 wherein said primary air conditioning further comprises a temperature sensor electrically coupled to said CPU.
7. The smart air conditioning system of claim 1 wherein each of said plurality of secondary air conditioning system further comprises:
an air supply duct adapted to receive air at said common temperature from said common room;
a device operable to change said preset common temperature to said specific temperature for each of said plurality of beds; and
an output air duct connected to said air circulating system.
8. The smart air conditioning system of claim 1 wherein said air supply duct and said output air duct are made of manganese (Mn).
9. The smart air conditioning system of claim 1 wherein said device operable to change said preset common temperature to said specific temperature for each of said plurality of beds is either a magnetic or an infrared system.
10. The smart air conditioning system of claim 1 wherein said CPU further includes a memory device operable to retain said specific temperatures at any time, time turning on (t ON ) or turning off (t OFF ) of said temperature controller.
11. The smart air conditioning system of claim 10 wherein said CPU sets said specific temperature for said specific bed during said auto mode by either a habitual usage mode or a last temperature mode, wherein said habitual usage mode is established from a pattern of specific temperatures recorded in said memory by the following formula: if the sum of certain specific temperature is greater than at least 51% in comparison with other specific temperature in said sequence, then said CPU sets that particular temperature.
12. The smart air conditioning system of claim 11 wherein during said last temperature mode, said CPU is operable to adjust said specific temperature for each bed by a formula:
T=T 1 +(28−T 1 /16−t) where T 1 is the specific temperature set at each bed last time before turning off, t is the current time.
13. The smart air conditioning system of claim 12 wherein during said manual mode, said CPU releases the control of said temperature controller which is set by either said patient of said specific bed or by a doctor.
14. The smart air conditioning system of claim 13 wherein during said timing mode, said CPU releases the control of said temperature controller which is now programmed to set said specific temperature at a particular time of the day.
15. A method for providing a specific temperature to a specific bed in a common room having a plurality of beds, comprising:
circulating the air inside of said common room to a filtering module along a first path using a plurality of air circulating modules;
filtering out impurities from said air to create a clean air using said filtering module and sending said clean air to said common room along a second path;
setting a common temperature for said common room using a primary air cooling module located outside of said common room; and
setting a specific temperature for each bed of said plurality of beds using a secondary air conditioning module equipped for each bed, wherein said secondary air conditioning module is controlled by a central processing unit (CPU) employing either a manual mode, an auto mode, or a timing mode, wherein said air filtering module further comprises:
a water container,
a silver metal screen covering the entire surface of the water,
a layer of activated carbon deposited upon the entire top surface area of said silver metal screen,
a plurality of input air ducts, each having a first end placed inside of said common room and a second end bent at 90° from said first end and extends below the surface of the water of said water container, and
a plurality of suction fans, each is placed on the other side of said water container opposite to said plurality of input air ducts and above the surface of said layer of activated carbon.
16. The method of claim 15 wherein said auto mode further comprises a habitual usage mode and a last temperature mode, wherein during said habitual usage mode, said specific temperature is set from a sequence of specific temperatures recorded in a memory of said CPU by the following formula: if the sum of said specific temperatures is greater than at least 51% in comparison with other specific temperature in said sequence, then said CPU selects that specific temperature for said specific bed.
17. The method of claim 15 wherein during said last temperature mode, said specific temperature is set by a formula T=T 1 +(28−T 1 /16−t) where T 1 is said specific temperature set at each bed last time before turning off, t is the current time.
18. The method of claim 15 wherein said setting a common temperature for said common room further comprises:
detecting each specific temperature at each bed;
finding the lowest temperature among the collection of said specific temperatures at said plurality of beds; and
setting said lowest temperature as said common temperature for said common room.
19. The method of claim 15 wherein setting a specific temperature for each bed of said plurality of beds using a secondary air conditioning module further comprises steps of circulating said specific temperature set for each of said bed using an air circulating module, wherein said circulating module further comprises:
an air supply duct adapted to receive air at said preset common temperature from said common room;
a magnetic device for changing said common temperature to said specific temperature for each of said plurality of beds; and
an output air duct connected to said air circulating system.
20. The method of claim 19 wherein said air supply duct and said output air duct are made of manganese (Mn).Join the waitlist — get patent alerts
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